Publication Beamlines Strategic Pillar
Dragomir, Mirela; Dube, Paul A.; Arčon, Iztok; Boyer, Chad; Rutherford, Megan et al. (2019). Comparing Magnetism in Isostructural Oxides A0.8La1.2MnO4.1: Anisotropic Spin Glass (A = Ba) versus Long-Range Order (A = Sr). Chemistry of Materials 31(19) , 7833-7844. 10.1021/acs.chemmater.9b01466. Materials
Wells, Garth; Achenbach, Sven; Klymyshyn, David; Jacobs, Michael; Mazhar, Waqas et al. (2019). High-Aspect-Ratio Micropatterning Capabilities into Thick Resist Layers Using Deep X-ray Lithography at SyLMAND. Synchrotron Radiation News 32(4) , 44-47. 10.1080/08940886.2019.1634438. SYLMAND Materials
Nurdin, Lucie; Spasyuk, Denis M.; Piers, Warren E.; Maron, Laurent (2017). Reactions of Neutral Cobalt(II) Complexes of a Dianionic Tetrapodal Pentadentate Ligand: Cobalt(III) Amides from Imido Radicals. Inorganic Chemistry 56(7) , 4157-4168. 10.1021/acs.inorgchem.7b00174. Materials
Gendy, Chris; Spasyuk, Denis; Harrison, Alexander; Roesler, Roland (2018). Molybdenum and nickel atrane complexes with a rigid tripodal tetraphosphine ligand incorporating imidazole rings. Inorganica Chimica Acta 475, 150-154. 10.1016/j.ica.2017.10.017. Materials
LaPierre, Etienne A.; Clapson, Marissa L.; Piers, Warren E.; Maron, Laurent; Spasyuk, Denis M. et al. (2017). Oxygen Atom Transfer to Cationic PCPNi(II) Complexes Using Amine-N-Oxides. Inorganic Chemistry 57(1) , 495-506. 10.1021/acs.inorgchem.7b02766. Materials
Michaelian, Kirk H.; Frogley, Mark D.; Kelley, Chris S.; Pedersen, Tor; May, Tim E. et al. (2018). Micro-photoacoustic infrared spectroscopy. Infrared Physics and Technology 93, 240-246. 10.1016/j.infrared.2018.07.030. MID-IR Materials
Berkenbrock, José-Alvim; Machado, Rafaela Grecco; Achenbach, Sven (2018). How Might X-Ray Scanned Potatoes Improve Cancer Treatment?. Microscopy and Microanalysis 24(S2) , 410-411. 10.1017/s1431927618014332. SYLMAND Materials
Ye, Yifan; Cai, Fan; Li, Haobo; Wu, Haihua; Wang, Guoxiong et al. (2017). Surface functionalization of ZIF-8 with ammonium ferric citrate toward high exposure of Fe-N active sites for efficient oxygen and carbon dioxide electroreduction. Nano Energy 38, 281-289. 10.1016/j.nanoen.2017.05.042. Materials